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Large-Scale Parsimony Analysis of Metazoan Indels in Protein-Coding Genes

机译:蛋白编码基因中后生代插入缺失的大规模简约分析。

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Insertions and deletions (indels) are considered to be rare evolutionary events, the analysis of which may resolve controversial phylogenetic relationships. Indeed, indel characters are often assumed to be less homoplastic than amino acid and nucleotide substitutions and, consequently, more reliable markers for phylogenetic reconstruction. In this study, we analyzed indels from over 1,000 metazoan orthologous genes. We studied the impact of different species sampling, ortholog data sets, lengths of included indels, and indel-coding methods on the resulting metazoan tree. Our results show that, similar to sequence substitutions, indels are homoplastic characters, and their analysis is sensitive to the long-branch attraction artifact. Furthermore, improving the taxon sampling and choosing a closely related outgroup greatly impact the phylogenetic inference. Our indel-based inferences support the Ecdysozoa hypothesis over the Coelomata hypothesis and suggest that sponges are a sister clade to other animals.
机译:插入和缺失(indels)被认为是罕见的进化事件,对其分析可能会解决有争议的系统发育关系。实际上,通常认为插入缺失特征比氨基酸和核苷酸取代的同质性差,因此,用于系统发育重建的更可靠的标记。在这项研究中,我们分析了1000多个后生直系同源基因的插入缺失。我们研究了不同物种采样,直系同源数据集,所含插入/缺失长度和插入/缺失编码方法对后生后生树的影响。我们的结果表明,与序列替换相似,插入缺失是同质性,其分析对长分支吸引伪影很敏感。此外,改进分类单元采样并选择密切相关的外部群体会极大地影响系统发育推断。我们基于indel的推论支持Ecdysozoa假设而非Coelomata假设,并暗示海绵是其他动物的姐妹进化枝。

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